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Basic Biotechnology Laboratory

General data

Course ID: 1200-1ELBIOL5
Erasmus code / ISCED: 13.3 Kod klasyfikacyjny przedmiotu składa się z trzech do pięciu cyfr, przy czym trzy pierwsze oznaczają klasyfikację dziedziny wg. Listy kodów dziedzin obowiązującej w programie Socrates/Erasmus, czwarta (dotąd na ogół 0) – ewentualne uszczegółowienie informacji o dyscyplinie, piąta – stopień zaawansowania przedmiotu ustalony na podstawie roku studiów, dla którego przedmiot jest przeznaczony. / (0531) Chemistry The ISCED (International Standard Classification of Education) code has been designed by UNESCO.
Course title: Basic Biotechnology Laboratory
Name in Polish: Elementy biotechnologii - laboratorium
Organizational unit: Faculty of Chemistry
Course groups: (in Polish) Przedmioty minimum programowego - zamienniki dla studentów 5-go semestru (S1-CH)
ECTS credit allocation (and other scores): 4.00 Basic information on ECTS credits allocation principles:
  • the annual hourly workload of the student’s work required to achieve the expected learning outcomes for a given stage is 1500-1800h, corresponding to 60 ECTS;
  • the student’s weekly hourly workload is 45 h;
  • 1 ECTS point corresponds to 25-30 hours of student work needed to achieve the assumed learning outcomes;
  • weekly student workload necessary to achieve the assumed learning outcomes allows to obtain 1.5 ECTS;
  • work required to pass the course, which has been assigned 3 ECTS, constitutes 10% of the semester student load.
Language: Polish
Main fields of studies for MISMaP:

chemistry

Type of course:

obligatory courses

Prerequisites (description):

A least satisfactory knowledge of physical, organic and general chemistry

Short description:

Mass and energy balances of unit operations and of complex chemical processes. Steady state and unsteady -state process balances. Estimation of the product yield and unit raw material and energy consumption via mass and energy balances. Examples of the process cost calculation

Full description:

A list of laboratory experiments available: Balance of technological processes; Continuous production of vinyl polyalcohol; Water purification in the sorptive column filled with an active carbon and water demineralization with help of ion columns; Emulsion and suspension polymerization of styrene; Catalytic cracking; Concentration of solutions in a single-effect evaporator; Concentration of solutions in a double-effect evaporator; Continuous process of detergent production employing alkylaryl sulfonic acids; Continuous process of bicarbonate production by Solvay method; Computer simulation of technological processes using Chem-Cad software; Determination of process rate constant in case of alcohol; Application of membrane techniques for separation of products in bioprocesses; Biocatalysts and their application in industry; Biocatalytic sucrose inversion in flow column reactors; Biofuels.

Bibliography:

Editor prof. T. Kasprzycka-Gutman. “Podręcznik do ćwiczeń z technologii chemicznej”, WUW, Warszawa, 1996rE.Bortel, H.Koneczny - Zarys technologii chemicznej.J.Kępiński - Technologia chemiczna nieorganiczna. A.Z.Zieliński – “ Chemiczna technologia organiczna”. Adamczak, M. Biokataliza i jej zastosowanie. w: Podstawy biotechnologii przemysłowej. Red. W. Bednarski i J. Fiedurek. WNT 2007, 317-378.http://www.chem.uw.edu.pl/people/JSkupinska/wyma02.htm

Learning outcomes:

At the end of learning process student is able to

- calculate heat and material balance of single reactions and chemical reactors

- use Chem-Cad program for plant design and for process optimization

- plan and carry out continuous complex organic and inorganic synthesis in the laboratory scale

- employ the analytical methods such as gas chromatography, infrared spectrophotometry, calorimetry for the evaluation of chemical reactions

Assessment methods and assessment criteria:

Graded on the basis of partial grades from the individual laboratory exercis

Practical placement:

No.

Classes in period "Winter semester 2023/24" (past)

Time span: 2023-10-01 - 2024-01-28
Selected timetable range:
Navigate to timetable
Type of class:
Lab, 60 hours more information
Coordinators: Grzegorz Litwinienko, Hanna Wilczura-Wachnik
Group instructors: Jakub Cędrowski, Katarzyna Jodko-Piórecka, Adrian Konopko, Agnieszka Krogul-Sobczak, Jarosław Kusio, Grzegorz Litwinienko, Elżbieta Megiel, Piotr Piotrowski, Hanna Wilczura-Wachnik, Elżbieta Winnicka
Students list: (inaccessible to you)
Examination: Grading

Classes in period "Winter semester 2024/25" (future)

Time span: 2024-10-01 - 2025-01-26
Selected timetable range:
Navigate to timetable
Type of class:
Lab, 60 hours more information
Coordinators: Grzegorz Litwinienko, Hanna Wilczura-Wachnik
Group instructors: Jakub Cędrowski, Katarzyna Jodko-Piórecka, Adrian Konopko, Agnieszka Krogul-Sobczak, Jarosław Kusio, Grzegorz Litwinienko, Elżbieta Megiel, Piotr Piotrowski, Hanna Wilczura-Wachnik, Elżbieta Winnicka
Students list: (inaccessible to you)
Examination: Grading
Course descriptions are protected by copyright.
Copyright by University of Warsaw.
Krakowskie Przedmieście 26/28
00-927 Warszawa
tel: +48 22 55 20 000 https://uw.edu.pl/
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